[1]
Qiuxia Sun. The corrosions and Protection of Materials, Metallurgy Industry Press, In Chinese (2001).
Google Scholar
[2]
Jimei Xiao, Chunan Cao. The Principle of Material Corrosion, Chemical Industry Press, In Chinese, 2002, p.12.
Google Scholar
[3]
Liang Guo, Haocheng Liang, Hongyan Sui. Electrochemistry, In Chinese, 2000, 6 (2) : 206.
Google Scholar
[4]
F A Bonilla, T S Ong, P Skeldon, et al. Enhanced corrosion resistance of titanium foil from nickel, nickel-molybdenum and palladium surface alloying by high intensity pulsed plasmas [J]. Corrosion Science, 2003, 45: 403.
DOI: 10.1016/s0010-938x(02)00125-7
Google Scholar
[5]
I Gacia, J J De Damborenea. Corrosion properties of TiN prepared by Laser Gas alloying of Ti and Ti6Al4V [J]. Corrosion Science, 1998, 40 (1) : 1411.
DOI: 10.1016/s0010-938x(98)00046-8
Google Scholar
[6]
Jimei Xiao, Chunan Cao. The Principle of Material Corrosion, Chemical Industry Press, (2002).
Google Scholar
[7]
Jianzhong Huang, Yu Zuo. The Corrosion Resistance and Data of Meterials, Chemical Industry Press, In Chinese, (2003).
Google Scholar
[8]
Zhenxia Wang. The Study of Ti6Al4V alloy and Pure Titanium Double Glow Plasma Surface Niobsing Technology and Transition Layer Performance [D], Taiyuan University of technology, 2006, In Chinese.
Google Scholar
[9]
Xiaoyun Zhang, Zhihui Tang, Bin Li. The Corrosion Behavior of TB8 Titanium Alloy in Acid or Alkali Solution and Hydraulic Oil [J]. Journal of Chinese Society for Corrosion and Protection, In Chinese, 2004, 24 (2) : 75.
Google Scholar